李建君, 敖海兵, 巴金红, 陈加松, 汪会盟, 李淑平, 胡志鹏. 热应力对盐穴储气库稳定性的影响[J]. 油气储运, 2017, 36(9): 1007-1012, 1018. DOI: 10.6047/j.issn.1000-8241.2017.09.004
引用本文: 李建君, 敖海兵, 巴金红, 陈加松, 汪会盟, 李淑平, 胡志鹏. 热应力对盐穴储气库稳定性的影响[J]. 油气储运, 2017, 36(9): 1007-1012, 1018. DOI: 10.6047/j.issn.1000-8241.2017.09.004
LI Jianjun, AO Haibing, BA Jinhong, CHEN Jiasong, WANG Huimeng, LI Shuping, HU Zhipeng. Influence of thermal stress on the stability of salt-cavern gas storage[J]. Oil & Gas Storage and Transportation, 2017, 36(9): 1007-1012, 1018. DOI: 10.6047/j.issn.1000-8241.2017.09.004
Citation: LI Jianjun, AO Haibing, BA Jinhong, CHEN Jiasong, WANG Huimeng, LI Shuping, HU Zhipeng. Influence of thermal stress on the stability of salt-cavern gas storage[J]. Oil & Gas Storage and Transportation, 2017, 36(9): 1007-1012, 1018. DOI: 10.6047/j.issn.1000-8241.2017.09.004

热应力对盐穴储气库稳定性的影响

Influence of thermal stress on the stability of salt-cavern gas storage

  • 摘要: 盐腔注采周期的变化导致腔内温度周期性变化,进一步导致围岩热应力的周期性变化。由于盐岩抗拉强度低,当这种周期性热应力为拉应力且数值较大时,盐岩将破碎从而导致腔体垮塌。结合声呐带压测腔实测的盐穴腔体形状和体积数据,采用有限元数值模拟方法,将温度场与已建力学模型进行耦合建立热应力模型,并对常规模型和热应力模型进行对比,以分析热应力对腔体稳定性的影响。结果表明:在常规模型中表现稳定的部分区域,在热应力模型中却发生垮塌现象,热应力模型计算结果与声呐实测带压测腔结果吻合,由此推断温度变化所产生的热应力是影响腔体稳定性的重要因素,严重时可能导致腔体垮塌。因此,腔体热应力影响因素的提出,进一步完善了腔体稳定性评价体系,使评价结果更加接近于地层的真实情况。

     

    Abstract: The change of salt-cavern injection-production cycle leads to the periodic change of cavern temperature, and then the periodic change of thermal stress of surrounding rock. The tensile strength of salt rock is low, so when the periodic thermal stress is tensile stress and its value is higher, salt rock will be broken, resulting in cavity collapse. In this paper, cavern shape and volume data measured by sonar under pressure were used. By virtue of finite-element numerical simulation, a thermal stress model was established by coupling the temperature field with the existing mechanical model. Then, the conventional model and the thermal stress model were compared to analyze the influence of thermal stress on cavern stability. It is indicated that some stable zones in the conventional model suffer collapse in the thermal stress model. The calculation results of thermal stress model are in accordance with the values measured by sonar under pressure, so it is inferred that the thermal stress generated by temperature change is the main factor influencing cavity stability and may even lead to cavity collapse. To sum up, the proposal of thermal stress as the influential factor makes the cavity stability evaluation system more complete and the evaluation results closer to the real strata situations.

     

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